• 제목/요약/키워드: Solid-state reaction

검색결과 848건 처리시간 0.029초

고상법에 의한 Sr3Al2O6 형광체의 분말합성 및 발광특성 (Synthesis of Sr3Al2O6 Phosphors by Solid State Reaction and Its Luminescent Properties)

  • 김수진;원형일;원창환
    • 한국세라믹학회지
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    • 제48권3호
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    • pp.241-245
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    • 2011
  • A red strontium aluminate phosphor ($Sr_3Al_2O_6:Eu^{3+},Eu^{2+}$) is synthesized using a solid state reaction method in air and reducing atmosphere. The investigation of firing temperature indicates that a single phase of $Sr_3Al_2O_6$ is formed when the firing temperature is higher than $1300^{\circ}C$. The effect of firing temperature and doping concentration on luminescent properties are investigated. $Sr_3Al_2O_6$ phosphor exhibits the typical red luminescent properties of $Eu^{3+}$ and $Eu^{2+}$.

초음파 분무에 의한 (Y,Gd)$BO_3:Eu^{3+}$ 형광체의 제조와 이의 발광 특성 (The Synthesis of (Y,Gd)$BO_3:Eu^{3+}$Phosphor by Ultrasonic Spray and Their Photoluminance Properties)

  • 김대수;김성우;이임렬
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1999년도 추계학술대회 논문집
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    • pp.107-110
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    • 1999
  • The ultrasonic spray method was employed to make (Y,Gd)BO$_3$:Eu Phosphor, and its optical properties under 147nm VUV and 254 nm UV excitations were characterized and then compared with that produced by the solid-state reaction. The mixed solution of acetate hydrates of Y, Gd, Eu and boric acid diluted in water or methanol was used as the precursor fur the spray. It was found that (Y,Gd)BO$_3$:Eu phosphor made by this ultrasonic spray had a spherical shape and fine particle size of 1${\mu}{\textrm}{m}$. The crystalline structure for the as-sprayed phosphor was amorphous, but it converted into the same polycrystalline phase of solid state reaction after post heat treatment at 110$0^{\circ}C$ for 2hr. The emitting intensity under VUV and UV excitations for the spray-formed (Y,Gd)BO$_3$:Eu phosphor, however, was inferior to the later one. The excitation spectra were also studied and compared under VUV and UV excitations to explain the change of emitting intensity with Gd substitution in (Y$_{1-x}$ Gd$_{x}$)BO$_3$:Eu Phosphors made by spray and solid state reaction.on.

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고체상태에서 Poly-${\varepsilon}$-caproamide의 후중합 및 해중합에 관한 연구 (Afterpolymerization and Depolymerization of Poly-${\varepsilon}$-caproamide in Solid State)

  • 문정지;이동호;안태완
    • 대한화학회지
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    • 제17권6호
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    • pp.450-454
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    • 1973
  • 고체상태에서 poly-${\varepsilon}$-caproamide의 후중합과 해중합을 질소흐름 및 밀봉의 두 조건하에서 행하였다. 중합도는 반응시간과 온도에 따라 증가하여 결국 평형에 도달하며, 산소의 존재하에서는 산화에 의해 해중합되어 중합도가 감소하게 된다. 중합도가 서로 다른 poly-${\varepsilon}$-caproamide를 반응시키면 평행에 도달했을 때의 중합도는 동일하게 된다.

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비정질 $SiO_2$${alpha}-Al_2O_3$부터 Mullite를 합성하기 위한 고체상태 반응속도 (Solid-state reaction kinetics for the formation of mullite($3Al_2O_3{\cdot}2SiO_2$) from amorphous $SiO_2$ and ${alpha}-Al_2O_3$)

  • 김익진;곽효섭;고영신
    • 한국결정성장학회지
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    • 제8권2호
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    • pp.332-341
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    • 1998
  • ${\alpha}-Al_2O_3$와 비정질 SiO2부터 Mullite를 합성하기 위한 고체상태반응의 반응속도를 1450~$1480^{\circ}C$ 온도 범위에서 연구하였다. 반응속도는 $Al_2O_3$분말을 코팅한 28.16wt%의 $SiO_2$와 일정한 온도에서 여러 시간동안 가열하여 생성된 혼합물에 의하여 결정되었다. MgO안의 반응물과 미반응물의 양은 X-선 회절분석에 의하여 결정되었다. Mullite의 부피율과 peak intensity 비의 자료로부터 $Al_2O_3$$SiO_2$$3Al_2O_3\;{\cdot}\;2SiO_2$형태로의 반응은 $1450^{\circ}C$$1480^{\circ}C$ 사이에서 시작되었다. 고체상태반응 활성화 에너지는 Arrhenius 식에 의하여 결정되었다. 활성화 에너지는 31.9KJ/mol이다.

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Surface Polarity Dependent Solid-state Molecular Biological Manipulation with Immobilized DNA on a Gold Surface

  • Lee, Jiyoung;Kim, Jeong Hee
    • International Journal of Oral Biology
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    • 제37권4호
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    • pp.181-188
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    • 2012
  • As the demand for large-scale analysis of gene expression using DNA arrays increases, the importance of the surface characterization of DNA arrays has emerged. We compared the efficiency of molecular biological applications on solid-phases with different surface polarities to identify the most optimal conditions. We employed thiol-gold reactions for DNA immobilization on solid surfaces. The surface polarity was controlled by creating a self-assembled monolayer (SAM) of mercaptohexanol or hepthanethiol, which create hydrophilic or hydrophobic surface properties, respectively. A hydrophilic environment was found to be much more favorable to solid-phase molecular biological manipulations. A SAM of mercaptoethanol had the highest affinity to DNA molecules in our experimetns and it showed greater efficiency in terms of DNA hybridization and polymerization. The optimal DNA concentration for immobilization was found to be 0.5 ${\mu}M$. The optimal reaction time for both thiolated DNA and matrix molecules was 10 min and for the polymerase reaction time was 150 min. Under these optimized conditions, molecular biology techniques including DNA hybridization, ligation, polymerization, PCR and multiplex PCR were shown to be feasible in solid-state conditions. We demonstrated from our present analysis the importance of surface polarity in solid-phase molecular biological applications. A hydrophilic SAM generated a far more favorable environment than hydrophobic SAM for solid-state molecular techniques. Our findings suggest that the conditions and methods identified here could be used for DNA-DNA hybridization applications such as DNA chips and for the further development of solid-phase genetic engineering applications that involve DNA-enzyme interactions.

합성 방법에 따른 Li2MnSiO4/C 다중음이온 양극활물질의 구조 및 전기화학적 성질 (Characterization on the electrochemical and structural properties of polyanion cathode material Li2MnSiO4/C depending on the synthesis process)

  • 이영림;정영민;송민섭;주재백;조원일
    • 에너지공학
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    • 제20권2호
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    • pp.103-108
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    • 2011
  • 다중음이온 양극활물질인 $Li_2MnSiO_4$/C을 액상법과 고상법으로 각각 합성한 후 탄소로 그 표면을 코팅하여 구조 및 전기화학적인 특성을 비교하였다. XRD 측정에서 $Li_2MnSiO_4$/C의 피크를 잘 나타내었으나 고상법에서 제조한 시편의 경우 약간의 불순물이 있음을 확인하였다. FE-SEM, HR-TEM 측정을 통해 액상법에 의한 시편은 수십 나노 크기의 입자로 구성된 반면 고상법에 의한 것은 500~600 nm로 합성된 것을 확인 하였다. 전기화학적 측정에서는 액상법으로 합성한 $Li_2MnSiO_4$/C가 고상법으로 한 것 보다 우수한 특성을 모습을 보였는데, 액상법에 의한 시료의 초기 충전 용량은 235 mAh/g, 초기 방전 용량은 189 mAh/g을 각각 나타 내어 고상법에 의한 시료 보다 나은 초기 충방전 용량을 나타냈다. 그러나 사이클 특성은 저조하였으며 10사이클 후에 62%의 용량 잔존율을 보였다.

(Glycine+Urea) 혼합연료를 이요한 자발착화 연소반응법에 의한 우수한 소결성의 초미분체 LaAlO$_3$ 분말 합성 (Synthesis of Ultrafine LaAlO$_3$ Powders with Good Sinterability by Self-Sustaining Combustion Method Using (Glycine+Urea) Fuel)

  • 남희동;최우성;이병하;박성
    • 한국세라믹학회지
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    • 제36권2호
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    • pp.203-209
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    • 1999
  • Si 기판위에 Ba2YCu3O7-$\delta$ 고온초전도체를 응용하기 위해 요구되는 buffer층으로 유망한 재료인 LaAlO3 단일상 분말을 고상반응법과 자발착한 연소반응법으로 제조하였다. 제조된 LaAlO3 분말의 입자형태와 결정상태는 scanning electron microscope (SEM)과 X-ray diffractometer (XRD)를 이용하여 분석하였다. 분말의 비표면적과 소결특성은 각각 Brunauer-Emmett-Teller(BET) 방법과 dilatometer를 측정하였다. 고상반응법으로 LaAlO3 분말을 제조할 때에는 하소온도를 150$0^{\circ}C$까지 높게 하여도 단일상을 얻는 것이 어려웠으나 자발착한 연소반응법에 의한 분말제조는 $650^{\circ}C$의 저온에서 하소하여도 쉽게 얻을 수 있었다. Dilatometer 측정을 통하여 분석해 보면, 고상반응법에 의한 분말보다 자발착한 연소반응법에 의한 분말로 제조된 소결체가 고상반응법에 의한 소결체에 비해 1.4배나 큰 소멸밀도(98.87%)를 가졌다. 이렇게 소결밀도에서 큰 차이가 나는 것은 자발착한 연소방법에 의한 분말의 평균 입자크기가 nano crystal size이고 비표면적 값(56.54 $m^2$/g)이 매우 크기 때문이다. 두가지 방법으로 제조된 분말을 이용, LaAlO3 layer를 스크린 프린팅과 소결법으로 Si 기판상에 제조하였으며 자발착한 연소합성법으로 제조된 분말은 110$0^{\circ}C$에서 우수한 소결특성을 나타내었다.

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고체상 나노구멍을 이용한 DNA 염기서열 분석기술 (DNA Sequencing Analysis Technique by Using Solid-State Nanopore)

  • 김태헌;박정호
    • 센서학회지
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    • 제21권5호
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    • pp.359-366
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    • 2012
  • Nanopore DNA sequencing is an emerging and promising technique that can potentially realize the goal of a low-cost and high-throughput method for analyzing human genome. Especially, solid-state nanopores have relatively high mechanical stability, simple surface modification, and facile fabrication process without the need for labeling or amplification of PCR (polymerized chain reaction) in DNA sequencing. For these advantages of solid-sate nanopores, the use of solid-state nanopores has been extensively considered for developing a next generation DNA sequencing technology. Solid-state nanopore sequencing technique can determine and count charged molecules such as single-stranded DNA, double-stranded DNA, or RNA when they are driven to pass through a membrane nanopore between two electrolytes of cis-trans chambers with applied bias voltage by measuring the ionic current which varies due to the existence of the charged particles in the nanopore. Recently, many researchers have suggested that nanopore-based sensors can be competitive with other third-generation DNA sequencing technologies, and may be able to rapidly and reliably sequence the human genome for under $1,000.

Conversion of organic residue from solid-state anaerobic digestion of livestock waste to produce the solid fuel through hydrothermal carbonization

  • Yang, Seung Kyu;Kim, Daegi;Han, Seong Kuk;Kim, Ho;Park, Seyong
    • Environmental Engineering Research
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    • 제23권4호
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    • pp.456-461
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    • 2018
  • The solid-state anaerobic digestion (SS-AD) has promoted the development and application for biogas production from biomass which operate a high solid content feedstock, as higher than 15% of total solids. However, the digested byproduct of SS-AD can be used as a fertilizer or as solid fuel, but it has serious problems: high moisture content and poor dewaterability. The organic residue from SS-AD has to be improved to address these problems and to make it a useful alternative energy source. Hydrothermal carbonization was investigated for conversion of the organic residue from the SS-AD of livestock waste to solid fuels. The effects of hydrothermal carbonization were evaluated by varying the reaction temperatures within the range of $180-240^{\circ}C$. Hydrothermal carbonization increased the calorific value through the reduction of the hydrogen and oxygen contents of the solid fuel, in addition to its drying performance. Therefore, after the hydrothermal carbonization, the H/C and O/C atomic ratios decreased through the chemical conversion. Thermogravimatric analysis provided the changed combustion characteristics due to the improvement of the fuel properties. As a result, the hydrothermal carbonization process can be said to be an advantageous technology in terms of improving the properties of organic waste as a solid-recovered fuel product.

Improving Power Conversion Efficiency and Long-term Stability Using a Multifunctional Network Polymer Membrane Electrolyte; A Novel Quasi-solid State Dye-sensitized Solar Cell

  • 강경호;권영수;송인영;박성해;박태호
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.484.2-484.2
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    • 2014
  • There are many efforts to improving the power conversion efficiencies (PCEs) of dye-sensitized solar cells (DSCs). Although DSCs have a low production cost, their low PCE and low thermal stability have limited commercial applications. This study describes the preparation of a novel multifunctional polymer gel electrolyte in which a cross-linking polymerization reaction is used to encapsulate $TiO_2$ nanoparticles toward improving the power conversion efficiency and long-term stability of a quasi-solid state DSC. A series of liquid junction dye-sensitized solar cells (DSCs) was fabricated based on polymer membrane encapsulated dye-sensitized $TiO_2$ nanoparticles, prepared using a surface-induced cross-linking polymerization reaction, to investigate the dependence of the solar cell performance on the encapsulating membrane layer thickness. The ion conductivity decreased as the membrane thickness increased; however, the long term-stability of the devices improved with increasing membrane thickness. Nanoparticles encapsulated in a thick membrane (ca. 37 nm), obtained using a 90 min polymerization time, exhibited excellent pore filling among $TiO_2$ particles. This nanoparticle layer was used to fabricate a thin-layered, quasi-solid state DSC. The thick membrane prevented short-circuit paths from forming between the counter and the $TiO_2$ electrode, thereby reducing the minimum necessary electrode separation distance. The quasi-solid state DSC yielded a high power conversion efficiency (7.6/8.1%) and excellent stability during heating at $65^{\circ}C$ over 30 days. These performance characteristics were superior to those obtained from a conventional DSC (7.5/3.5%) prepared using a $TiO_2$ active layer with the same thickness. The reduced electrode separation distance shortened the charge transport pathways, which compensated for the reduced ion conductivity in the polymer gel electrolyte. Excellent pore filling on the $TiO_2$ particles minimized the exposure of the dye to the liquid and reduced dye detachment.

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